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RGS proteins destroy spare receptors: Effects of GPCR-interacting proteins and signal deamplification on measurements of GPCR agonist potency

机译:RGS蛋白破坏备用受体:与GPCR相互作用的蛋白和信号去扩增对GPCR激动剂效价的影响

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摘要

Many GPCRs are able to activate multiple distinct signaling pathways, and these may include biochemical cascades activated via either heterotrimeric G proteins or by beta-arrestins. The relative potencies and/or efficacies among a series of agonists that act on a common receptor can vary depending upon which signaling pathway is being activated. This phenomenon is known as biased signaling or functional selectivity, and is presumed to reflect underlying differences in ligand binding affinities for alternate conformational states of the receptor. The first part of this review discusses how various cellular GPCR interacting proteins (GIPs) can influence receptor conformation and thereby affect ligand-receptor interactions and contribute to signaling bias. Upon activation, receptors trigger biochemical cascades that lead to altered cellular function, and measuring points along the cascade (e.g., second messenger production) conveys information about receptor activity. As a signal continues along its way, the observed concentration dependence of a GPCR ligand may change due to amplification and saturation of biochemical steps. The second part of this review considers additional cellular factors that affect signal processing, focusing mainly on structural elements and deamplification mechanisms, and discusses the relevance of these to measurements of potency and functional selectivity. (C) 2015 Elsevier Inc. All rights reserved.
机译:许多GPCR能够激活多种不同的信号传导途径,其中可能包括通过异源三聚体G蛋白或β-arrestin激活的生化级联反应。一系列作用于共同受体上的激动剂之间的相对效力和/或功效可以根据激活哪个信号传导途径而变化。这种现象被称为有偏差的信号传导或功能选择性,并且被认为反映了受体的交替构象状态的配体结合亲和力的根本差异。本综述的第一部分讨论了各种细胞GPCR相互作用蛋白(GIP)如何影响受体构象,从而影响配体-受体相互作用并促进信号偏向。激活后,受体触发导致细胞功能改变的生化级联反应,沿级联反应的测量点(例如第二信使产生)传达有关受体活性的信息。随着信号继续传播,观察到的GPCR配体的浓度依赖性可能会由于生化步骤的扩增和饱和而改变。这篇综述的第二部分考虑了影响信号处理的其他细胞因子,主要关注结构元件和去扩增机制,并讨论了这些因素与效价和功能选择性的相关性。 (C)2015 Elsevier Inc.保留所有权利。

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